LaserBeam ProfilingSolutions. UV/VIS/NIRLaserBeam Profiler

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LaserBeam ProfilingSolutions UV/VIS/NIRLaserBeam Profiler

TABLE OF CONTENTS PRODUCT DESCRIPTION CINCAM CCD TECHNICAL DATA SENSOR RESPONSE DIMENSIONS CINCAM CCD LARGE FORMAT TECHNICAL DATA SENSOR RESPONSE DIMENSIONS CINCAM CMOS TECHNICAL DATA SENSOR RESPONSE DIMENSIONS CINCAM CMOS NANO TECHNICAL DATA SENSOR RESPONSE DIMENSIONS CINCAM CMOS PICO TECHNICAL DATA SENSOR RESPONSE DIMENSIONS CINCAM INGAAS TECHNICAL DATA SENSOR RESPONSE DIMENSIONS BEAM QUALITY M² - CINSQUARE BEAM FOCUS MEASUREMENT - CINSPOT LASER LINE CHARACTERIZATION - CINLINE NEAR FIELD BEAM PROFILER - NFBP ACCESSORIES NEUTRAL DENSITY FILTER BEAM REDUCER IR MODULE / SENSOR COATING UV SENSOR COATING PRISM ATTENUATOR BEAM PROFILING SOFTWARE RAYCI

CinCam CCD/CMOS/InGaAs - Product Description - CINOGY Technologies CinCam is optimized to provide excellent sensitivity in the UV / VIS / NIR spectral range. Thanks to its high resolution and its small pixel size, the CinCam is a high performance tool for laser beam analysis of continuous wave (cw) and pulsed laser modes. Spectral response: Pixel size: Pixel: Technologies: Data output: Interface: <150nm - 1320nm / 900nm - 1800nm 2.2μm² - 30.0μm² 0.1MPixel - 16MPixel CCD / CMOS / InGaAs 8Bit / 10Bit / 12Bit / 14Bit USB / FireWire / GigE CinCam CCD CinCam CCD Large Format CinCam CCD beam profilers enable high accuracy laser beam analysis from <150nm to 1150nm with best price/performance ratio. Due to its high dynamic range the CinCam captures even higher laser modes with outstanding detail. The passive cooled sensor is constructed without cover glass to avoid interference patterns. CinCam CMOS CinCam CMOS-Nano CinCam CMOS-Pico CinCam InGaAs The particular cost-effective entry-level beam profiler CinCam CMOS is optimized to provide excellent sensitivity from <150nm to 1150nm (1320nm). The CMOS sensor is constructed without cover glass to avoid interference patterns. The lightweight and ultracompact design facilitates easy integration in optical assemblies. The CinCam InGaAs based on the latest InGaAs technology, allowing high sensitivity imaging in the range from 900nm to 1800nm. The 15µm/30µm square pixel beam profiler enables images with high dynamic range and resolution for accurate laser beam analysis. The portable CinCam is designed to be used in a variety of applications in industry, science, R&D, including: Laser beam analysis of cw and pulsed lasers Quick control of laser modes and adjustment errors Test equipment for scientific research Near-Field and Far-Field analyses of lasers, LED devices and other light sources.

CinCam CCD - Technical Data - CCD-1201 CCD-2301 CCD-2302 Standard Series Standard Series Standard Series SENSOR DATA Format: 1/2 2/3 2/3 Active area (without cover glass): 6.5mm x 4.8mm 9.0mm x 6.7mm 8.5mm x 7.1mm Number of pixel: 1388 x 1038 (1.4MP) 1388 x 1038 (1.4MP) 2452 x 2056 (5MP) Pixel size: 4.65µm x 4.65µm 6.45µm x 6.45µm 3.45µm x 3.45µm Spectral response: Standard: absorptive built-in ND filter RT: reflective built-in ND filter UV: phosphor sensor coating OM: sensor without microlenses IR: phosphor sensor coating 400nm - 1150nm 320nm - 1150nm <150nm - 1150nm - 1470nm - 1605nm 400nm - 1150nm 320nm - 1150nm <150nm - 1150nm - 1470nm - 1605nm 400nm - 1150nm 320nm - 1150nm <150nm - 1150nm - 1470nm - 1605nm Beam diameter min / max (recommended): 46.5µm / 4mm 64.5µm / 5mm 34.5µm / 5.5mm Sensor cooling: passive passive passive CAMERA FEATURES Mount: C-Mount C-Mount C-Mount Bit depth (output): 14Bit (12Bit GigE) 14Bit (12Bit GigE) 14Bit (12Bit GigE) Dynamic: 60dB (1:1000) 67dB (1:2200) 54dB (1:500) Frame rate: up to 15Hz up to 16Hz up to 6Hz Exposure time: 500µs-300ms 500µs-300ms 500µs-300ms Interface: FireWire 1394b / GigE FireWire 1394b / GigE FireWire 1394b / GigE I/O connector: 12-Pin Hirose 12-Pin Hirose 12-Pin Hirose Mode: cw or pulsed cw or pulsed cw or pulsed Trigger: TTL-Signal TTL-Signal TTL-Signal SPECIFICATIONS Mechanical dimensions (W x H x L): 60mmx60mmx103.9mm 60mmx60mmx103.9mm 60mmx60mmx103.9mm Weight: 300g 300g 300g Electrical requirements: DC 8V-36V DC 8V-36V DC 8V-36V Storage temperature*: -10 C +60 C -10 C +60 C -10 C +60 C Operating temperature*: +5 C +45 C +5 C +45 C +5 C +45 C Regulations: CE, RoHS CE, RoHS CE, RoHS * Without condensation Design and specification of the described product(s) are subject to change without notice.

CinCam CCD - Sensor Response - - Dimensions - CCD-1201 CCD-2301 CCD-2302

CinCam CCD-3501 - Technical Data CCD-3501 Large Format Series SENSOR DATA Format: 35mm CCD Active area (without cover glass): 36mm x 24mm Number of pixel: 4864 x 3232 (15.7MP) Pixel size: 7.4µm x 7.4µm Spectral response: 400nm - 1100nm Beam diameter min / max (recommended): 74µm / 16mm CAMERA FEATURES Mount: Filter-Mount (M48x0.5) Bit depth (output): 12Bit Dynamic: 59dB (1:900) Frame rate: up to 2Hz@single tap; 4.6Hz@quad tap Exposure time: 0.5ms-1s Interface: GigE I/O connector: 12-Pin Hirose Mode: cw or pulsed Trigger: TTL-Signal SPECIFICATIONS Mechanical dimensions (W x H x L): 66mmx53.3mmx59.1mm Weight: 370g Electrical requirements: DC 7V-25V, PoE Storage temperature*: -10 C +60 C Operating temperature*: +5 C +45 C Regulations: CE, RoHS * Without condensation Design and specification of the described product(s) are subject to change without notice.

CinCam CCD-3501 - Sensor Response - - Dimensions - CCD-3501

CinCam CMOS - Technical Data - CMOS-1201 CMOS-1202 CMOS-1203 CMOS-1204 Standard Series Standard Series Standard Series Standard Series SENSOR DATA Format: 1/2 1/1.8 1/1.8 1/2.5 Active area (without cover glass): 6.7mm x 5.3mm 6.8mm x 5.4mm 7.2mm x 5.4mm 5.7mm x 4.3mm Number of pixel: 1280 x 1024 (1.3MPixel) 1280 x 1024 (1.3MPixel) 1600 x 1200 (2MPixel) 2560 x 1920 (5MPixel) Pixel size: 5.2µm x 5.2µm 5.3µm x 5.3µm 4.5µm x 4.5µm 2.2µm x 2.2µm Spectral response: Standard: absorptive built-in ND filter RT: reflective built-in ND filter UV: phosphor sensor coating OM: sensor without microlenses IR: phosphor sensor coating 400nm - 1150nm 320nm - 1150nm <150nm - 1150nm - 1470nm - 1605nm 400nm - 1320nm 320nm - 1320nm <150nm - 1150nm 240nm - 1150nm 1470nm - 1605nm 400nm - 1320nm 320nm - 1320nm <150nm - 1150nm 240nm - 1150nm 1470nm - 1605nm 400nm - 1150nm 320nm - 1150nm <150nm - 1150nm 240nm - 1150nm on request Beam diameter min / max (recommended): 52µm / 4mm 53µm / 4.1mm 45µm / 4mm 22µm / 3.2mm CAMERA FEATURES Mount: Filter-Mount Filter-Mount Filter-Mount Filter-Mount Bit depth (output): 8Bit 8Bit 8Bit 8Bit Dynamic: 68dB (1:2500) 62dB (1:1250) 62dB (1:1250) 70dB (1:3150) Frame rate: up to 20Hz up to 20Hz up to 14Hz up to 5Hz Exposure time: 100µs-140ms 100µs-300ms 100µs-300ms 200µs-200ms Interface: USB 2.0 USB 2.0 USB 2.0 USB 2.0 Shutter: Rolling Global Global Rolling Mode: cw cw or pulsed cw or pulsed cw Trigger: - TTL-Signal TTL-Signal - SPECIFICATIONS Mechanical dimensions (W x H x L): 40mmx40mmx20mm 40mmx40mmx20mm 40mmx40mmx20mm 40mmx40mmx20mm Weight: 46g 50g 50g 50g Electrical requirements: Power supply via USB Power supply via USB Power supply via USB Power supply via USB Storage temperature*: -10 C +60 C -10 C +60 C -10 C +60 C -10 C +60 C Operating temperature*: +0 C +40 C +0 C +40 C +0 C +40 C +0 C +40 C Regulations: CE, RoHS CE, RoHS CE, RoHS CE, RoHS * Without condensation Design and specification of the described product(s) are subject to change without notice.

CinCam CMOS - Sensor Response - - Dimensions - CMOS-1201 CMOS-1202 CMOS-1203 CMOS-1204

CinCam CMOS Nano - Technical Data - CMOS-1201-Nano CMOS-1.001-Nano Nano Series Nano Series SENSOR DATA Format: 1/1.8 1 Active area (without cover glass): 6.8mm x 5.4mm 11.3mm x 11.3mm Number of pixel: 1280 x 1024 (1.3MPixel) 2048 x 2048 (4.2MPixel) Pixel size: 5.3µm x 5.3µm 5.5µm x 5.5µm Spectral response: Standard: absorptive built-in ND filter RT: reflective built-in ND filter UV: phosphor sensor coating OM: sensor without microlenses IR: phosphor sensor coating 400nm - 1320nm 320nm - 1320nm <150nm - 1150nm 240nm - 1150nm 1470nm - 1605nm 400nm - 1320nm 320nm - 1320nm <150nm - 1150nm 240nm - 1150nm 1470nm - 1605nm Beam diameter min / max (recommended): 53µm / 4.1mm 55µm / 7.5mm CAMERA FEATURES Mount: Filter-Mount Filter-Mount Bit depth (output): 10Bit 10Bit Dynamic: 62dB (1:1250) 60dB (1:1000) Frame rate: up to 40Hz (higher on request) up to 20Hz (higher on request) Exposure time: 100µs-100ms 100µs-100ms Interface: USB 3.0 USB 3.0 Shutter: Global Global Mode: cw or pulsed cw or pulsed Trigger: TTL-Signal TTL-Signal SPECIFICATIONS Mechanical dimensions (W x H x L): 29mmx29mmx20mm 29mmx29mmx24mm Weight: 26g 28g Electrical requirements: Power supply via USB Power supply via USB Storage temperature*: -10 C +60 C -10 C +60 C Operating temperature*: +0 C +40 C +0 C +40 C Regulations: CE, RoHS CE, RoHS * Without condensation Design and specification of the described product(s) are subject to change without notice.

CinCam CMOS Nano - Sensor Response - - Dimensions - CMOS-1201 Nano CMOS-1.001 Nano

CinCam CMOS Pico - Technical Data - CMOS-1201-Pico Standard Series SENSOR DATA Format: 1/2.5 Active area (without cover glass): 5.7mm x 4.3mm Number of pixel: 2560 x 1920 (5MPixel) Pixel size: 2.2µm x 2.2µm Spectral response: Standard: absorptive built-in ND filter RT: reflective built-in ND filter UV: phosphor sensor coating OM: sensor without microlenses IR: phosphor sensor coating 400nm - 1150nm 320nm - 1150nm <150nm - 1150nm 240nm - 1150nm 1470nm - 1605nm Beam diameter min / max (recommended): 22µm / 3.2mm CAMERA FEATURES Mount: Filter-Mount Bit depth (output): 12Bit Dynamic: 70dB (1:3150) Frame rate: up to 4.6Hz Exposure time: 200µs-200ms Interface: USB 2.0 Shutter: Rolling Mode: cw Trigger: - SPECIFICATIONS Mechanical dimensions (W x H x L): 15mmx15mmx11.5mm Weight: 20g Electrical requirements: Power supply via USB Storage temperature*: -10 C +60 C Operating temperature*: +0 C +40 C Regulations: CE, RoHS * Without condensation Design and specification of the described product(s) are subject to change without notice.

CinCam CMOS Pico - Sensor Response - - Dimensions -

CinCam InGaAs - Technical Data - CinCam-InGaAs-320 CinCam-InGaAs-640 Standard Series Standard Series SENSOR DATA Type: InGaAs, progressive scan InGaAs, progressive scan Active area (without cover glass): 1, 9.6mm x 7.7mm 1, 9.6mm x 7.7mm Number of pixel: 320 x 256 640 x 512 Pixel size: 30µm x 30µm 15µm x 15µm Spectral response: 0.9µm - 1.8µm 0.9µm - 1.8µm Beam diameter min / max (recommended): 300µm / 5.7mm 150µm / 5.7mm Quantum efficiency: >70% (1000nm-1640nm) >75% (1000nm-1640nm) Pixel operability: >99.5% >99.5% Sensor cooling: TEC (stabilized +5 C, -20K relative) TEC (stabilized +5 C, -30K relative) CAMERA FEATURES Mount: Filter-Mount Filter-Mount Bit depth (output): 12Bit (A/D 14Bit) 12Bit (A/D 14Bit) Frame rate: up to 100Hz (300Hz) up to 60Hz (100Hz) Exposure time: 10µs-20ms 10µs-100ms Dynamic range: 60dB (gain 1) 59dB (gain 0) Interface: GigE GigE Mode: cw and pulsed cw and pulsed SPECIFICATIONS Mechanical dimensions (W x H x L): 55mmx55mmx78mm 55mmx55mmx78mm Weight: 340g 370g Electrical requirements: 10.8V to 30.0V or vie PoE 10.8V to 30.0V or vie PoE Storage temperature*: -30 C +60 C -30 C +60 C Operating temperature*: -20 C +50 C -20 C +50 C Regulations: CE, RoHS CE, RoHS * Without condensation Design and specification of the described product(s) are subject to change without notice.

CinCam InGaAs - Sensor Response - - Dimensions - CinCam InGaAs-320 CinCam InGaAs-640

CinCam Application Beam Quality M² - CinSquare - The CinSquare CS200 / CS300 system is a compact and fully automated tool to measure the beam quality of cw and pulsed laser systems from the UV to NIR spectral range. This system consists of a fixed focusing lens in front of a motorized translation stage carrying a CinCam CCD/CMOS/InGaAs beam profiler. To analyse the beam caustic according to ISO 11146-1/2 the software calculates the beam size of several measurement planes via 2 nd Moment method. The whole measuring process is fully automated and controlled by CINOGY s software RayCi. The CinSquare measurement system is equipped with two alignment mirrors for exact positioning of the laser beam through the measurement set-up. An additional filter wheel allows incremental beam attenuation. Its operational robustness and reliability ensures continuous use applications in industry, science, research and development. Confirm to ISO 11146-1/2 Robust and compact system in industrial design Up to 6 focusing lenses and 6 ND filters assembled Reliable and fully automated M² measurement in <1 minute (~30s fast scan) Camera-based system CinCal algorithm for high measurement accuracy 2D- and 3D-Caustic fit Compatible with cw and pulsed laser systems Measurement data as printable protocol (pdf) Spectral response: Pixel size: Number of pixel: Technology: Data output: Beam diameter (1/e²): Stage length: ND filter: Focusing lens: Input power: Software: Dimensions CS200: Dimensions CS300: 250nm-950nm@CCD / 350nm-1320nm@CMOS / 900nm-1700nm@InGaAs 3.75μm²@CCD / 5.3μm²@CMOS / 15μm²@InGaAs 1.3MPixel@CCD / CMOS / 0.3MPixel@InGaAs CCD / CMOS / InGaAs 14Bit / 10Bit / 14Bit 0.5-10mm 200mm (400mm)@CS-200 / 300mm@CS-300 up to 6 ND filters pre-assembled up to 6 lenses pre-assembled up to 50W RayCi-Pro 560 x 220 x 190mm³ 745 x 220 x 190mm³ The software RayCi reports M², K, beam waist diameter, beam waist position, divergence angle, Rayleigh length, etc. Incomparable visualization modes, extensive analytical capabilities and new developed algorithms ensure the highest accuracy for beam quality measurements. For scientific beam quality measurements CINOGY Technologies provides a pre-assembled and flexible measurement set-up in open design. CINOGY s experienced team provides CinSquare systems tailored to customer's requirements.

CinCam Application Focus Beam Profiler - CinSpot FBP-50M- The Focus-Beam-Profiler FBP-50M is a compact and fully automated tool to measure the focused laser beam from the UV to NIR range. The integrated CinCam beam profiler is moved precisely by the translation stage along the focus region. Its operational robustness and reliability ensures continuous use applications especially in industrial applications. A modular attenuation unit allows focus analysis up to 50W laser power. The whole measuring process is controlled by CINOGY s software RayCi. SENSOR DATA Spectral response: Pixel size: Number of pixel: Technology: Data output: Interface: FEATURES 340nm-1150nm 5.3µm² 1.3MPixel CMOS (CCD) 10Bit USB 2.0 / GigE Objective: 4x (NA 0.1) / 10x (NA 0.25) / 20x (NA 0.4) Focus spot size: Stage length: Input power (without attenuator): Input power (with attenuator): Replaceable ND filter: >16μm@4x / >6μm@10x / >3μm@20x (accept focal lengths >80mm) 100mm (accuracy 10µm / speed 10mm/s) max 100mW max 50W (water cooling / 2l/min, 1bar, 20-25 C) Absorptive type: OD1.0 / OD2.0 / OD3.0 / OD4.0 / OD5.0 (400nm - 1150nm) Replaceable ND filter: Reflective type: OD1.0 / OD2.0 / OD3.0 (340nm - 1150nm) Accuracy: Software: SPECIFICATIONS Waist position 50µm / Spot size 2-4% (measurement position is calibrated) RayCi-Pro Mechanical dimensions (W x H x L): 334mm x 220mm x 84mm³ (without attenuator) / 370mm x 220mm x 84mm³ (with attenuator) Weight: Electrical requirements: Water-cooling: Storage temperature: Operating temperature: Regulations: ~6kg 36V Water-cooled absorber, Tap or DI-water; 2l/min, 1bar, 20-25 C, Ø 8mm hose -10 C +60 C +0 C +40 C CE, RoHS

CinCam Application Focus Beam Profiler - CinSpot FBP-1KF- The Focus-Beam-Profiler FBP-1KF is a compact tool to measure the focused laser beam from the UV to NIR range for up to 400W laser input power. It works with a fixed measurement position and is characterized by very compact design. The operational robustness and reliability ensures continuous use applications especially in industrial applications. The whole measuring process is controlled by CINOGY s software RayCi. SENSOR DATA Spectral response: 340nm-1150nm (1320nm) 340nm-950nm Pixel size: 5.3µm² 3.45µm² Number of pixel: 1.3MPixel 3.2MPixel Technology: CMOS CMOS Data output: 10Bit 12Bit Interface: USB 2.0 / USB 3.0 USB 2.0 / USB 3.0 FEATURES Collimated beam size: 0.5m-3mm Focus spot size: 65µm@single mode / 300µm@multi mode 42µm@single mode / 300µm@multi mode Max NA / Divergence: 0.05 / 100mrad Input laser power: max 400W@single mode / max 700W@multi mode Measurement time with water-cooling @22 C: no limitation Measurement time without water-cooling: 20s@400W Accuracy: Waist position 50µm / Spot size 2-4% (measurement position is calibrated) Software: RayCi-Pro SPECIFICATIONS Mechanical dimensions (W x H x L): 98mm x 98mm x 65mm Weight: ~2kg Electrical requirements: Power supply via USB Water-cooling: Water-cooled absorber, Tap or DI-water: 2l/min, 1bar, 20-25 C, Ø 8mm hose Dust protection: Flushing with clean air to avoid contamination of the optics (cleaned, oil-free, dry, particles <10 nm) Storage temperature: -10 C +60 C Operating temperature: +0 C +40 C Regulations: CE, RoHS

CinCam Application Laser Line Characterization - CinLine - The CinLine tool is a compact and unique tool to measure beam profiles of cw and pulsed laser systems from UV to NIR spectral range. This system includes a special designed diffusion screen and the camera-based CinCam CCD/CMOS beam profiler with imaging optic. The sophisticated screen architecture enables speckle-free beam profiling especially of laser lines, rectangle profiles or laser with large beam diameter. Several versions are available to open up new opportunities in laser characterization. The compact measurement system is designed to be used in industry, science, research and development. Speckle-free diffusion screen Confirm to ISO standard Pre-assembled and compact measurement system Accurate and reliable measurements Compatible with cw and pulsed laser systems Measurement data as printable protocol Spectral response: 320nm 1150nm Beam Profiler: CinCam CMOS / CCD Input Power (max): 500mW Input Intensity (max): 10W/cm² Resolution: Up to 17µm Interface: FireWire / USB / GigE The CinLine system is available with its specifically designed beam profiling software RayCi, which utilizes unique analytical capabilities and incomparable visualization modes. This ensures the highest accuracy in beam profile analysis. I. Option Active Area: 30mm x 30mm Beam Diameter (max): 20mm x 20mm II. Option Active Area: 40mm x 20mm Beam Diameter (max): 27mm x 13mm III. Option Active Area: 60mm x 15mm Beam Diameter (max): 40mm x 10mm CINOGY s experienced team provides CinLine systems tailored to customer's requirements.

CinCam Application Near-Field Beam Profiler - NFBP - CINOGY Technologies near field beam profiling option is suitable for focus spot measurements and near field imaging of fiber ends or output surfaces from laser diodes over a wide wavelength range. The set-up based on the compact CinCam CMOS models and can be assembled with different microscope objectives. These calibrated microscope objectives assured maximum accuracy and enables imaging of small beam structures on the diffraction limit. 4x System 10x System 20x System 40x System Magnification: 4x (calibrated) 10x (calibrated) 20x (calibrated) 40x (calibrated) Numerical aperture (NA): 0.1 0.25 0.4 0.65 Working distance (WD): 15.8mm 10.0mm 3.3mm 0.6mm Focal length: 29.8mm 15.26mm 8.55mm 4.39mm Optical resolution: ~2µm ~1.5µm ~1.2µm ~1.0µm Spectral range: Standard: RT: NIR: IR: Input power (max): Replaceable ND filter: residual silicon response phosphor sensor coating Beam profiler resolution: CinCam CMOS-1201 CinCam CMOS-1202 CinCam CMOS-1203 CinCam CMOS-1204 CinCam CMOS-1201-Nano CinCam CMOS-1.001-Nano Field of view: CinCam CMOS-1201 CinCam CMOS-1202 CinCam CMOS-1203 CinCam CMOS-1204 CinCam CMOS-1201-Nano CinCam CMOS-1.001-Nano Beam size: CinCam CMOS-1201 CinCam CMOS-1202 CinCam CMOS-1203 CinCam CMOS-1204 CinCam CMOS-1201-Nano CinCam CMOS-1.001-Nano 400nm - 1150nm CMOS-1201 / 1202 / 1203 / 1204 // CMOS-1201-Nano / 1.001-Nano 320nm - 1150nm CMOS-1201 / 1202 / 1203 / 1204 // CMOS-1201-Nano / 1.001-Nano 400nm - 1320nm CMOS-1202 / CMOS-1203 // CMOS-1201-Nano / 1.001-Nano 1470nm - 1605nm CMOS-1201 / 1202 / 1203 / 1204 // CMOS-1201-Nano / 1.001-Nano 100mW@4x, 10x / 10mW@20x, 40x / Power level for 1320nm and 1550nm on request Absorptive type: OD1.0 / OD2.0 / OD3.0 / OD4.0 / OD5.0 (400nm - 1320nm, 1470nm -1605nm) Reflective type: OD1.0 / OD2.0 / OD3.0 (320nm - 1320nm) 1280 x 1024 pixel 5.2µm x 5.2µm 1280 x 1024 pixel 5.3µm x 5.3µm 1600 x 1200 pixel 4.5µm x 4.5µm 2560 x 1920 pixel 2.2µm x 2.2µm 1280 x 1024 pixel 5.3µm x 5.3µm 2040 x 2040 pixel 5.5µm x 5.5µm 1664µm x 1331µm 1696µm x 1357µm 1800µm x 1350µm 1408µm x 1056µm 1696µm x 1357µm 2825µm x 2825µm ~13µm - 666µm ~14µm - 678µm ~11µm - 675µm ~5.5µm - 528µm ~14µm - 678µm ~13µm - 1875µm 666µm x 533µm 678µm x 543µm 720µm x 540µm 563µm x 422µm 678µm x 543µm 1130µm x 1130µm ~5.2µm - 267µm ~5.3µm - 272µm ~4.5µm - 270µm ~2.2µm - 211µm ~5.3µm - 272µm ~5.5µm - 750µm 333µm x 267µm 339µm x 272µm 360µm x 270µm 282µm x 211µm 339µm x 272µm 565µm x 565µm ~2.6µm - 134µm ~2.6µm - 136µm ~2.3µm - 135µm ~1.1µm - 106µm ~2.6µm - 136µm ~2.8µm - 375µm 167µm x 134µm 170µm x 136µm 180µm x 135µm 141µm x 106µm 170µm x 136µm 283µm x 283µm ~1.3µm - 67µm ~1.3µm - 68µm ~1.1µm - 67µm ~0.6µm - 53µm ~1.3µm - 68µm ~1.4µm - 188µm

Neutral Density Filter - Technical Data - CINOGY s neutral density filters allow broadband attenuation for a spectral range from VIS to NIR. Due to their excellent surface quality the absorptive and reflective filters enable precise beam attenuation for low power applications. The level of attenuation is specified by the optical density. Filters with different optical densities can be combined. A filter adapter is available to mount the filters on the CinCam aperture. Reflective Absorptive Absorptive AR NDR-0.3 - NDR-30 NDA-0.3 - NDA-50 NDA-0.3 - NDA-50 Spectral range: 200nm - 2100nm 400nm - 1700nm 400nm - 700nm/700nm - 1200nm Optical density*: 0.3 / 1.0 / 2.0 / 3.0 0.3 / 1.0 / 2.0 / 3.0 / 4.0 / 5.0 0.3 / 1.0 / 2.0 / 3.0 / 4.0 / 5.0 Material: UV-Fused silica (Coating: Metal) Schott glass Schott glass (AR Coating) Flatness: 1 @ 300nm /4 @ 632.8nm /4 @ 632.8nm Scratch-Dig: 40-20 40-20 40-20 Parallelism: 3arcmin 10arcsec 10arcsec Optical density tolerance: 5% 5% 5% Power (Pmax): < 1W < 1W < 1W Intensity (Imax): 10W/cm 2 5W/cm 2 5W/cm 2 Diameter: =25mm/25.4mm / =50mm/50.8mm =25mm/25.4mm / =50mm/50.8mm =25mm/25.4mm / =50mm/50.8mm Filter adapter: C-Mount thread / Filter thread C-Mount thread / Filter thread C-Mount thread / Filter thread * Different optical densities on request Design and specification of the described product(s) are subject to change without notice.

Beam Reducer Objective - Technical Data - The beam reducer is an add-on to the standard CinCam Beam Profiler. It is designed for adjusting the laser beam size precisely to the effective area of the Beam Profiler. Thereby, the reduction factor and the measurement plane are calibrated. The beam reducer offers high performance optical designs packaged in a precise opto-mechanical platform. The input aperture allows beam profiling of lasers with diameters up to 12mm with CINOGY s CinCam systems. BR-UV/VIS-01 BR-VIS/NIR-01 BR-NIR-01 Spectral range: 350-700nm 650-1080nm 1040-1650nm Ratio: 2x; 3x; 4x 2x; 3x; 4x 2x; 3x; 4x Free aperture: 22mm 22mm 22mm Beam diameter (1/e²): max 12mm max 12mm max 12mm Damage threshold: Calibration: 0.4J/cm² (@ 10ns, 532nm) 300W/cm² Reduction Factor Measurement Plane 2J/cm² (@ 10ns, 810nm) 500W/cm² Reduction Factor Measurement Plane 2J/cm² (@ 10ns, 1550nm) 300W/cm² Reduction Factor Measurement Plane Lens: Achromatic Lens Achromatic Lens Achromatic Lens Design and specification of the described product(s) are subject to change without notice.

IR Module - Technical Data - The C-Mount converter module is an add-on to a standard CinCam Beam Profiler and extends sensitivity into the near IR range. The cost effective module is based on complex and non charge anti-stokes material with unique emission properties and converts 1495nm-1595nm photons to CCD / CMOS detectable wavelengths without fading or image lag. A lens transfers the converted image to the attached CinCam Beam Profiler. MO-IR-01 Sensitivity: 1470nm-1605nm Active area: 22mm x 16.5mm (demagnification x0.29) Material: Phosphor (anti-stokes) Decay time: <1ms Emission spectrum: 950nm-1075nm Resolution: 40lp/mm at sensor focal plane Linearity: Non-linear (corrected by software) Dynamic range: 42dB (CinCam CCD-1201) / 43dB (CinCam CMOS-1201) / 44dB (CinCam CMOS-1202) Max input intensity: 1W/cm 2 Beam diameter accuracy: 5%-10% Camera mount: C-Mount Dimensions (O.D. x L): 46mm x 97mm Design and specification of the described product(s) are subject to change without notice.

IR Sensor Coating - Technical Data - The complex and non charge anti-stokes phosphor is also suitable as direct sensor coating. The coating can be used with CinCam CCD/CMOS models. This solution finds application as sensitive detector for beam profiling or alignment of telecom lasers. The real time nature confers significant and cost effective benefits over other IR imaging techniques. Phosphor type: 1470nm-1605nm (Anti stokes - rare earth dopant) Particle size range: 5μm - 9μm Absorption characteristics: 3 band - 0.8μm, 1.0μm, 1.55μm Decay to 10%: <1ms Sensitivity: 1470nm - 1605nm Peak sensitivity: 1510 / 1540 (multi peak response) Emission spectrum: 950nm - 1075nm Afterglow: Low Linearity: Non-linear (corrected by software) Dynamic range: 42dB (CinCam CCD-1201) / 43dB (CinCam CMOS-1201) / 44dB (CinCam CMOS-1202) Damage threshold: 100 mw/cm² Beam diameter accuracy: 5% - 10% Robustness: moderate Design and specification of the described product(s) are subject to change without notice.

UV Sensor Coating - Technical Data - A typical limitation of CCD / CMOS sensors is that light with short wavelengths is absorbed by the very first structures of the sensor and is not recognized as a signal. The shorter the wavelength is, the less the sensors output signal is affected by illumination. A UV to VIS converting coatings which absorbs UV light and emits visual light instead is covered by a thin layer on the sensor. The robust fluorescent material is ideally suited for UV imaging. The material shows an excellent quantum yield of nearly 100% for wavelengths below 450nm and down to 100nm. In contrast there is a high transparency of the material for wavelengths above 480nm which gives a very good response even in the visual and near infrared range. Technology: Fluorescence material (Lumigen) Thickness: 1µm Sensitivity: <150nm - 450nm Emission spectrum: 500nm - 650nm Peak emission: 530nm Fluoresces decay time: Some ns Phosphorescence: Not significant Resolution: Sensor MTF is reduced by 50% Technology: Fluorescence material (Lumigen) Design and specification of the described product(s) are subject to change without notice. All UV coatings show aging effects (degradation). But CINOGY Technologies gives important handling advice to significantly extend the lifetime (e.g. low illumination, no overexposed). Sensor without Microlenses (On Request): Alternatively, CINOGY Technologies has developed a unique technique to remove the microlenses on the sensor resulting in higher sensitivity down to 240nm.

Prism Attenuator - Technical Data - The modular prism attenuator is an add-on to the standard CinCam Beam Profiler. It is based on two uncoated fused silica wedges and is designed for pre-attenuation high intensive laser beams. The technical principle is based on the polarization effect by reflection on an optical surface. The s-pol. and p-pol. parts of the laser beam have different reflection factors. Cause of the orthogonally arrangement of the wedges, the polarization effect is compensated and the laser beam is neutrally attenuated. The prism attenuator can be used up to intensities of 2GW/cm² for pulse wave and 25kW/cm² for continuous wave. It can be combined with neutral density filters for final power adjustment to the beam profiler sensitivity level. The high performance optical design in compact housing allows precise beam attenuation. PA-12-2x-100 PA-12-2x-200 Spectral range: 190nm - 2.000nm 190nm - 2.000nm Wedge material: Uncoated fused silica Uncoated fused silica Free aperture: =15mm =15mm Power (Pmax): <100W <200W Intensity (Imax) cw: <20kW/cm² <20kW/cm² Intensity (Imax) pulsed: 2GW/cm² / 30J/cm² @ 15ns, 1Hz 2GW/cm² / 30J/cm² @ 15ns, 1Hz Dimensions: 40mmx40mmx80mm 40mmx40mmx80mm Design and specification of the described product(s) are subject to change without notice.

LASER BEAM PROFILER SOFTWARE Beam Profiler Software RayCi - Product Description - CINOGY Technologies beam profilers are available with the specifically designed analysis software, RayCi, which supports XP / Vista / Windows 7 / 8 operating systems. It is available as 32 Bit / 64 Bit version and can control several beam profiler cameras on a single computer simultaneously. XP / Vista / Windows 7 / 8 Pentium IV / AMD Processor (Dual / Quad Core) 512MB graphic, Open GL V1.4 (NVIDIA) 2GB RAM 500MB free memory PCI / PCIe slot USB ports CD / DVD-ROM drive Internet access for update request Due to its clearly designed menu structure, RayCi shows self-explanatory functions, which help the user to access quickly standard settings. Incomparable visualization modes, extensive analytical capabilities as well as new developed correction algorithms ensure the highest accuracy in laser beam analysis. A wide range of beam width techniques e.g. 2 nd Moment, Knife Edge, Moving Slit, Plateau and Gauss-Fit can be applied to determine quick and reliable standard beam parameters. The unique measurement tool enables the continuous monitoring of beam parameters, beam position and power density distribution. Moreover a new beam quality M 2 tool enables accurate beam quality analysis. The extraordinary graphical and analytical tool of RayCi can be used for live data (LiveMode) and stored data (SaveMode) simultaneously, while each mode has its own individual functions. This makes RayCi the most advanced analysis software on the market. Helpful features like AOI Tracking, AOI Optimization, Zoom Functions, Look-Up Tables, etc. simplify the laser beam analysis. RayCi is equipped with flexible data and image output capabilities. This permits the user to store data and images in the format that is compatible with their needs. A clearly arranged and printable protocol view displays the measurement parameters as well as the most important laser beam analysis results. CINOGY S laser beam profiler can easily be integrated in different automation systems and processes. The supplied Software Development Kit (SDK) based on a XML-rpc interface. The user can write programs in a number of platforms, such as Python, Visual Basic, LabVIEW, etc. which will remote-control the beam profiler.